Marko Ackermann

Affiliations: 
2007-2009 Biomedical Engineering Cleveland Clinic Foundation, Cleveland, OH, United States 
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"Marko Ackermann"
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Cuerva VI, Ackermann M, Leonardi F. (2022) Performance of Impedance Control-Based Strategies in Power-Assisted Wheelchairs: A Predictive Simulation Study. Frontiers in Neurorobotics. 16: 805835
de A. Martins MA, Ackermann M, Leonardi F. (2018) EFFECTS OF A CLOSED-LOOP PARTIAL POWER ASSISTANCE ON MANUAL WHEELCHAIR LOCOMOTION Ifac-Papersonline. 51: 350-354
Santos GF, Gomes AA, Sacco ICN, et al. (2017) Predictive simulation of diabetic gait: Individual contribution of ankle stiffness and muscle weakening. Gait & Posture. 58: 208-213
Bobbert MF, Kistemaker DA, Vaz MA, et al. (2016) Searching for strategies to reduce the mechanical demands of the sit-to-stand task with a muscle-actuated optimal control model. Clinical Biomechanics (Bristol, Avon). 37: 83-90
Camargo-Junior F, Ackermann M, Loss JF, et al. (2013) Influence of center of pressure estimation errors on 3D inverse dynamics solutions during gait at different velocities. Journal of Applied Biomechanics. 29: 790-7
Ackermann M, van den Bogert AJ. (2012) Predictive simulation of gait at low gravity reveals skipping as the preferred locomotion strategy. Journal of Biomechanics. 45: 1293-8
Forner-Cordero A, Ackermann M, de Lima Freitas M. (2011) A method to simulate motor control strategies to recover from perturbations: application to a stumble recovery during gait. Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual International Conference. 2011: 7829-32
Ackermann M, van den Bogert AJ. (2010) Predictive simulation of gait in rehabilitation. Conference Proceedings : ... Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual Conference. 2010: 5444-7
Halloran JP, Ackermann M, Erdemir A, et al. (2010) Concurrent musculoskeletal dynamics and finite element analysis predicts altered gait patterns to reduce foot tissue loading. Journal of Biomechanics. 43: 2810-5
Ackermann M, van den Bogert AJ. (2010) Optimality principles for model-based prediction of human gait. Journal of Biomechanics. 43: 1055-60
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